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  Research interests 

    Advanced energy conversion and storage devices like lithium/sodium ion batteries and Supercapacitors based on micro/nano structured materials. 

 


  Papers:

[1] Hou, H.; Banks, C.; Jing, M.; Zhang, Y.; Ji, X., Carbon Quantum Dots and Their Derivative 3D Porous Carbon Frameworks for Sodium-Ion Batteries with Ultralong Cyclelife. Advanced Materials 2015, 27 (47), 7861–7866. (IF=19.791, JCR一区,第一作者)
[2] Hou, H.; Qiu, X.; Wei, W.; Zhang, Y.; Ji, X. Carbon Anode Materials for Advanced Sodium-Ion Batteries. Advanced Energy Materials, 2017,DOI:10.1002/aenm.201602898. (IF=16.71, JCR一区,第一作者)
[3] Hou, H.; Shao, L.; Zhang, Y.; Zou, G.; Chen, J.; Ji, X., Large-Area Carbon Nanosheets Doped with Phosphorus: A High-Performance Anode Material for Sodium-Ion Batteries, Advanced Science, 2017, 1600243. (IF=9.034, JCR一区,第一作者)
[4] Hou, H.; Jing, M.; Zhang, Y.; Chen, J.; Huang, Z.; Ji, X., Cypress leaf-like Sb as anode material for high-performance sodium-ion batteries. Journal of Materials Chemistry A 2015, 3 (34), 17549-17552. (IF=8.867, JCR一区,第一作者)
[5] Hou, H.; Jing, M.; Yang, Y.; Zhang, Y.; Zhu, Y.; Song, W.; Yang, X.; Ji, X., Sb porous hollow microspheres as advanced anode materials for sodium-ion batteries. Journal of Materials Chemistry A 2015, 3 (6), 2971-2977. (IF=8.867, JCR一区,第一作者)
[6] Hou, H.; Cao, X.; Yang, Y.; Fang, L.; Pan, C.; Yang, X.; Song, W.; Ji, X., NiSb alloy hollow nanospheres as anode materials for rechargeable lithium ion batteries. Chemical Communications 2014, 50 (60), 8201-8203. (IF=6.319, JCR一区,第一作者)
[7] Hou, H.; Jing, M.; Huang, Z.; Yang, Y.; Zhang, Y.; Chen, J.; Wu, Z.; Ji, X., One-Dimensional Rod-Like Sb2S3-Based Anode for High-Performance Sodium-Ion Batteries. ACS Applied Materials & Interfaces 2015, 7 (34), 19362−19369. (IF=7.504, JCR一区,第一作者)
[8] Hou, H.; Jing, M.; Yang, Y.; Zhu, Y.; Fang, L.; Song, W.; Pan, C.; Yang, X.; Ji, X., Sodium/Lithium Storage Behavior of Antimony Hollow Nanospheres for Rechargeable Batteries. ACS Applied Materials & Interfaces 2014, 6 (18), 16189-16196. (IF=7.504, JCR一区,第一作者)
[9] Hou, H.; Jing, M.; Yang, Y.; Zhang, Y.; Song, W.; Yang, X.; Chen, J.; Chen, Q.; Ji, X., Antimony nanoparticles anchored on interconnected carbon nanofibers networks as advanced anode material for sodium-ion batteries. Journal of Power Sources 2015, 284, 227-235. (IF=6.395, JCR一区,第一作者)
[10] Hou, H.; Yang, Y.; Zhu, Y.; Jing, M.; Pan, C.; Fang, L.; Song, W.; Yang, X.; Ji, X., An Electrochemical Study of Sb/Acetylene Black Composite as Anode for Sodium-Ion Batteries. Electrochimica Acta 2014, 146, 328-334. (IF=4.798, JCR一区,第一作者)
[11] Hou, H.; Tang, X.; Guo, M.; Shi, Y.; Dou, P.; Xu, X., Facile preparation of Sn hollow nanospheres anodes for lithium-ion batteries by galvanic replacement. Materials Letters 2014, 128, 408-411. (IF=2.437, JCR一区,第一作者)
[12] Zhao, G.; Zou, G.; Qiu, X.; Li, S.; Guo, T.; Hou, H*; Ji, X., Rose-like N-doped Porous Carbon for Advanced Sodium Storage. Electrochimica Acta 2016, 240, 24-30. (IF=4.798, JCR一区,通讯作者)
[13] Liao, H.; Xie, L.; Zhang, Y.; Qiu, Q.; Li, S.; Huang, H.; Hou, H.*; Ji, X., Mo-doped Gray Anatase TiO2: Lattice Expansion for Enhanced Sodium Storage, Electrochimica Acta 2016, 219, 227. (IF=4.798, JCR一区,通讯作者)
[14] Zou, G.; Huang, Z.; Zhao, G.; Li, S.; Hou, H.*; Qiu, X.; Ji, X., Evaluating the Storage Behavior of Superior Low-Cost Anode Material from Biomass for High-Rate Sodium-Ion Batteries. Journal of The Electrochemical Society 2017,164, A1431-A1437. (IF= 3.259, JCR一区,通讯作者)
[15] Wang, Z.; Cao, X.*; Ge, P.; Zhu, L.; Xie, L.; Hou, H.*; Qiu, X.; Ji, X. Hollow-spheres ZnSe wrapped around carbon particles as cycle-stable and high-rate anode material for reversible Li-ion batteries. New Journal of Chemistry, 2017, DOI: 10.1039/C7NJ01230F. (IF= 3.277, JCR二区,通讯作者)"Shenghua"

 

A/Prof. Hongshuai Hou      侯红帅
College of Chemistry and Chemical Engineering, Central south University, Changsha, 410083, China
Email:hs-hou@csu.edu.cn
Website:http://faculty.csu.edu.cn/hhs/zh_CN/index.htm